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Adaptive incremental-redundancy transmission for tactical packet radio systems

机译:战术分组无线系统的自适应增量冗余传输

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A low-complexity protocol for the adaptation of incremental-redundancy transmission is described and evaluated for use in tactical packet radio systems that must communicate over channels with fading and other time-varying propagation losses. The protocol responds to variations in channel attenuation by adjusting the number of binary code symbols that are punctured in the first transmission for a packet and saved for subsequent transmissions if they are needed. The protocol relies on simple statistics from the receiver to provide the necessary control information for adapting the amount of puncturing or the rate of the code that is employed from one packet to the next. No channel measurements, parameter estimates, pilot symbols, or training are needed. The protocol's throughput performance is evaluated for dynamic channels that are modeled by finite-state Markov chains. Performance benchmarks are obtained from hypothetical ideal protocols that are given perfect channel-state information and are told all the parameters of the channel model. We demonstrate that the new adaptive protocol performs nearly as well as the hypothetical ideal protocols even though the adaptive protocol is given no channel-state information and no information about the channel model or its parameters.
机译:描述并评估了一种用于增量冗余传输适配的低复杂度协议,以用于必须在信道上进行衰落和其他时变传播损耗的通信的战术分组无线系统。该协议通过调整二进制编码符号的数量来响应信道衰减的变化,该二进制编码符号在分组的第一次传输中被打孔,并在需要时保存以用于后续传输。该协议依赖于来自接收器的简单统计信息,以提供必要的控制信息,以适应从一个数据包到下一个数据包的穿孔数量或编码速率。无需信道测量,参数估计,导频符号或训练。对于由有限状态马尔可夫链建模的动态通道,将评估协议的吞吐量性能。性能基准是从假设的理想协议中获得的,这些理想协议被赋予了完美的信道状态信息,并被告知信道模型的所有参数。我们证明即使自适应协议没有提供任何信道状态信息,也没有有关信道模型或其参数的信息,但新的自适应协议的性能几乎与假设的理想协议相同。

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